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首页> 外文期刊>Light: Science & Applications >Casub1/subsub−−ix/i/subLiisubx/sub/iAlsub1/subsub−/subisubx/sub/iSisub1+1+ix/i/subNsub3/sub:Eusup2+/sup solid solutions as broadband, color-tunable and thermally robust red phosphors for superior color rendition white light-emitting diodes
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Casub1/subsub−−ix/i/subLiisubx/sub/iAlsub1/subsub−/subisubx/sub/iSisub1+1+ix/i/subNsub3/sub:Eusup2+/sup solid solutions as broadband, color-tunable and thermally robust red phosphors for superior color rendition white light-emitting diodes

机译:Ca 1 --- x Li x Al 1 - x Si 1 + 1 + x N 3 < / sub>:Eu 2 + 固体溶液,可作为宽带,颜色可调且具有热稳定性的红色磷光体,可用于出色的色彩再现白色发光二极管

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摘要

A new red phosphor with broadband emission has yielded white LEDs that have both a high luminous efficacy and excellent colour rendering. By applying structure and bandgap engineering strategies, Rong-Jun Xie and co-workers from China, Japan and the USA fabricated their rare-earth phosphor from Ca1−xLixAl1−xSi1+xN3:Eu2+. They say that the introduction of LiS2N3 to CaAlSiN3:Eu2+ minimizes the usual trade-off between emission colour and efficiency. When the red phosphor was combined with a commercial blue InGaN LED and a green phosphor, the result was a white LED with a luminous efficacy exceeding 100 lumens per watt and a high colour rendering. The researchers note that in addition to superior colour quality, the use of LiS2N3 imparts better thermal stability to the phosphor compared with currently used red phosphors.
机译:一种新型的具有宽带发射的红色荧光粉已经产生了具有高发光效率和出色显色性的白色LED。通过应用结构和带隙工程策略,来自中国,日本和美国的谢荣军及其同事从Ca1-xLixAl1-xSi1 + xN3:Eu2 +制备了稀土荧光粉。他们说,将LiS2N3引入CaAlSiN3:Eu2 +可最大程度地减少发射颜色和效率之间的通常权衡。当红色磷光体与商用蓝色InGaN LED和绿色磷光体结合使用时,得到的白色LED的发光效率超过每瓦100流明,并且具有较高的显色性。研究人员指出,除了出色的色彩质量外,与目前使用的红色荧光粉相比,使用LiS2N3可以使荧光粉具有更好的热稳定性。

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